Huynh-Cong Evelyne, Driscoll Victoria, Ettou Sandrine, Keller Keith, Atakilit Amha, Taglienti Mary E, Kumar Saurabh, Weins Astrid, Schumacher Valerie A, Kreidberg Jordan A
Department of Urology, Boston Children's Hospital, Boston, MA, USA.
Department of Surgery, Harvard Medical School, Boston, MA, USA.
Nat Commun. 2025 Apr 8;16(1):3322. doi: 10.1038/s41467-025-58567-y.
The kidney glomerulus is a filtration barrier in which capillary loop architecture depends on epithelial-stromal interactions between podocytes and mesangial cells. Podocytes are terminally differentiated cells within the glomerulus that express YAP and TAZ. Here we test the hypotheses that YAP and TAZ are required in podocytes to maintain capillary loop architecture and that shifts in the integrin repertoire during podocyte injury affect transcriptional activity of YAP and TAZ. Loss of YAP in podocytes of adult mice renders them more sensitive to injury, whereas loss of both YAP and TAZ in podocytes rapidly compromises the filtration barrier. α3β1 and αvβ5 are two prominent integrins on murine podocytes. Podocyte injury or loss of α3β1 leads to increased abundance of αvβ5 and nuclear localization of YAP. In vitro, blockade of αvβ5 decreases nuclear YAP. Increased αv integrins are found in human kidney disease. Thus, our studies demonstrate the crucial regulatory interplay between cell adhesion and transcriptional regulation as an important determinant of human disease.
肾小球是一种滤过屏障,其中毛细血管袢结构依赖于足细胞和系膜细胞之间的上皮-基质相互作用。足细胞是肾小球内终末分化的细胞,表达YAP和TAZ。在这里,我们检验以下假设:足细胞中需要YAP和TAZ来维持毛细血管袢结构,并且足细胞损伤期间整合素谱的变化会影响YAP和TAZ的转录活性。成年小鼠足细胞中YAP的缺失使它们对损伤更敏感,而足细胞中YAP和TAZ两者的缺失会迅速损害滤过屏障。α3β1和αvβ5是小鼠足细胞上两种主要的整合素。足细胞损伤或α3β1的缺失会导致αvβ5丰度增加和YAP核定位。在体外,阻断αvβ5会减少核YAP。在人类肾脏疾病中发现αv整合素增加。因此,我们的研究证明了细胞黏附与转录调控之间至关重要的调节相互作用是人类疾病的一个重要决定因素。